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AMD Open Sources Secure Encrypted Virtualization (SEV) Technology for Cloud Confidential Computing

Insight Convey by Insight Convey
September 3, 2023
AMD Open Sources

Credit: AMD

Feature

  • AMD EPYC processors deliver robust performance and modern security, safeguarding data during usage, transmission, and storage.
  • Businesses like AstraZeneca and MonetaGo are actively adopting AMD SEV technology to encrypt systems and specific VM memory.
  • AMD EPYC CPUs provide diverse functions, including modern security, supporting optimized workloads in data centers.

By making the AMD open sources code for its Secure Encrypted Virtualization (SEV) technology, the basis of AMD EPYCTM processor-based confidential computing virtual machines (VMs), public, AMD has made a significant advancement. This technology powers virtual machines (VMs) provided by major cloud service providers, including Amazon Web Services (AWS), Google Cloud, Microsoft Azure, and Oracle Compute Infrastructure (OCI). This action intends to increase openness in the security sector and allow consumers to fully evaluate the technologies behind private computing virtual machines (VMs) powered by AMD EPYC processors.

Driving Transparency and Review

  • The disclosure of SEV AMD open sources code by AMD promotes openness in the security sector.
  • Customers may now thoroughly evaluate the hardware enabling secure virtual machines (VMs) powered by AMD EPYC CPUs.
  • The initiative emphasizes AMD’s commitment to open source and its dedication to delivering advanced security features.

Stakeholder Statements

  • AMD’s EVP and CTO, Mark Papermaster, emphasizes the firm’s commitment to current security features and innovation. Sharing SEV’s foundations demonstrates their dedication to open-source cooperation and transparency.
  • Jeff Reed, Google Cloud VP, emphasizes AMD’s encryption and collaborative efforts for safeguarding data privacy.
  • According to Mark Russinovich, Azure CTO and Technical Fellow at Microsoft, AMD deserves kudos for integrating with Azure’s open-source ethos by making portions of their security firmware public.

Read more:- onsemi Board of Directors Joined by Christina Lampe-Önnerud: A Pioneer in Energy Storage and Innovation

Enabling Cloud Service Providers with AMD Processors

  • AMD EPYC processors deliver robust performance and modern security, safeguarding data during usage, transmission, and storage.
  • These processors are at the heart of several VMs that support secret computing that top cloud service providers offer.
  • Due to AMD’s collaboration with these service providers, critical cloud workloads may run in safe settings.

Cloud Provider Capabilities with AMD EPYC

Amazon Web Services (AWS): SEV-SNP on instances like EC2 M6a, C6a, and R6a supports AMD EPYC-powered private computing.

Google Cloud: Offers analytics, private services (spaces, VMs, GKE, dataflow) powered by AMD EPYC CPUs, ensuring confidentiality.

Microsoft Azure: Hardware-based trusted execution environments, as well as SEV-SNP and AMD EPYC processors, are used by various secret computing services.

Oracle Compute Infrastructure (OCI): Delivers cutting-edge performance and security using Confidential VMs powered by EPYC CPUs.

Customer Adoption of AMD SEV Technology

  • Businesses like AstraZeneca and MonetaGo are actively adopting AMD SEV technology to encrypt systems and specific VM memory.
  • AMD EPYC CPUs provide diverse functions, including modern security, supporting optimized workloads in data centers.

Read more:- STMicroelectronics Achieves Vodafone NB-IoT Certification for ST87M01 NB-IoT and GNSS Modules

Conclusion

AMD’s decision to make SEV technology open source is an essential development in secure computing. Through this action, transparency is improved, consumers can evaluate security measures, and AMD’s position as a premier provider of cutting-edge security solutions for cloud-based secure computing is cemented.

Tags: AMDAMD EPYC CPUAstraZenecaAzureCloud ServiceComputing ServicesConfidential VMsData CentersDataflowMonetaGoSecurity SectorSEVVM Memory
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